The Effect of the Stirring Speed on the In Vitro Dry Matter Degradability of Feeds
暂无分享,去创建一个
[1] S. Tassone,et al. Rumen Fluid from Slaughtered Animals: A Standardized Procedure for Sampling, Storage and Use in Digestibility Trials , 2022, Methods and protocols.
[2] P. G. Peiretti,et al. In Vitro Techniques Using the DaisyII Incubator for the Assessment of Digestibility: A Review. , 2020, Animals : an open access journal from MDPI.
[3] M. Spanghero,et al. In vitro rumen fermentation of feed substrates added with chestnut tannins or an extract from Stevia rebaudiana Bertoni , 2020, Animal nutrition.
[4] Maria Chiaravalli,et al. Comparison of Faecal versus Rumen Inocula for the Estimation of NDF Digestibility , 2019, Animals : an open access journal from MDPI.
[5] S. Schiavon,et al. Rumen Inoculum Collected from Cows at Slaughter or from a Continuous Fermenter and Preserved in Warm, Refrigerated, Chilled or Freeze-Dried Environments for In Vitro Tests , 2019, Animals : an open access journal from MDPI.
[6] J. Cherney,et al. Comparison of In Vitro Long Digestion Methods and Digestion Rates for Diverse Forages , 2019, Crop Science.
[7] D. Ross,et al. Development of an in vitro method to determine rumen undigested aNDFom for use in feed evaluation. , 2018, Journal of dairy science.
[8] L. Bezerra,et al. Can ruminal inoculum from slaughtered cattle replace inoculum from cannulated cattle for feed evaluation research? , 2018, Semina: Ciências Agrárias.
[9] T. Jenkins,et al. Technical Note: Comparison of 4 methods for determining in vitro ruminal digestibility of annual ryegrass , 2018, The Professional Animal Scientist.
[10] R. Mohamed,et al. Fresh or frozen rumen contents from slaughtered cattle to estimate in vitro degradation of two contrasting feeds , 2018 .
[11] D. Combs,et al. Comparison of in situ versus in vitro methods of fiber digestion at 120 and 288 hours to quantify the indigestible neutral detergent fiber fraction of corn silage samples. , 2016, Journal of dairy science.
[12] F. Masoero,et al. Gas production and starch degradability of corn and barley meals differing in mean particle size. , 2016, Journal of dairy science.
[13] F. Tagliapietra,et al. Comparison of rumen fluid inoculum vs. faecal inoculum on predicted methane production using a fully automated in vitro gas production system , 2015 .
[14] A. Atuhaire,et al. Comparison of in vitro digestibility using slaughtered and fistulated cattle as sources of inoculum , 2015 .
[15] D. Yáñez-Ruiz,et al. Use of stomach tubing as an alternative to rumen cannulation to study ruminal fermentation and microbiota in sheep and goats , 2014 .
[16] D. Yáñez-Ruiz,et al. Ruminal microbiota developing in different in vitro simulation systems inoculated with goats’ rumen liquor , 2013 .
[17] P. G. Jennings,et al. Potency of microbial inocula from bovine faeces and rumen fluid for in vitro digestion of different tropical forage substrates , 2012 .
[18] A. Taghizadeh,et al. In vitro assessment of the digestibility of forage based sheep diet, supplemented with raw garlic, garlic oil and monensin , 2012, Veterinary research forum : an international quarterly journal.
[19] M. Carriquiry,et al. Comparison of dry matter and neutral detergent fibre degradation of fibrous feedstuffs as determined with in situ and in vitro gravimetric procedures , 2010 .
[20] F. Masoero,et al. Technical note: precision and accuracy of in vitro digestion of neutral detergent fiber and predicted net energy of lactation content of fibrous feeds. , 2010, Journal of dairy science.
[21] A. Can,et al. Frozen rumen fluid as microbial inoculum in the two-stage in vitro digestibility assay of ruminant feeds , 2010 .
[22] S. Schiavon,et al. In vitro rumen feed degradability assessed with DaisyII and batch culture: effect of sample size , 2009 .
[23] S. López,et al. In vitro digestibility and fermentation kinetics of some browse plants using sheep or goat ruminal fluid as the source of inoculum , 2008 .
[24] E. Yosef,et al. Effect of lactic acid bacteria inoculants on in vitro digestibility of wheat and corn silages. , 2007, Journal of dairy science.
[25] L. Gruber,et al. Precision and accuracy of the NDF rumen degradability of hays measured by the Daisy fermenter , 2007 .
[26] J. Plaizier,et al. Effects of source of rumen fluid on in vitro dry matter digestibility of feeds determined using the DAISYII incubator , 2006 .
[27] F. Giráldez,et al. Effect of preservation on fermentative activity of rumen fluid inoculum for in vitro gas production techniques , 2005 .
[28] R. M. Maurício,et al. In vitro microbial inoculum: A review of its function and properties , 2005 .
[29] A. Adesogan. Effect of bag type on the apparent digestibility of feeds in ANKOM DaisyII incubators , 2005 .
[30] M. Theodorou,et al. Comparison of bovine rumen liquor and bovine faeces as inoculum for an in vitro gas production technique for evaluating forages , 2001 .
[31] S. Mabjeesh,et al. In vitro methods for measuring the dry matter digestibility of ruminant feedstuffs: comparison of methods and inoculum source. , 2000, Journal of dairy science.
[32] D. Wilman,et al. A comparison of filter bag methods with conventional tube methods of determining the in vitro digestibility of forages , 2000 .
[33] M. D. Figueiredo,et al. An evaluation of the Daisy II-220 technique for determining in vitro digestibility of animal feeds in comparison with the Minson McLeod technique , 2000 .
[34] M. C. Mathews,et al. Influence of storage time and temperature on in vitro digestion of neutral detergent fibre at 48 h, and comparison to 48 h in sacco neutral detergent fibre digestion , 1999 .
[35] L. Holden. Comparison of methods of in vitro dry matter digestibility for ten feeds. , 1999, Journal of dairy science.
[36] S. Yalçın,et al. Straw degradability as a predictor of intake and growth rate in sheep , 1998 .
[37] E. Titgemeyer,et al. Standardization of in situ techniques for ruminant feedstuff evaluation. , 1998, Journal of animal science.
[38] R. Hironaka,et al. The effect of pelleting of alfalfa hay on methane production and digestibility by steers , 1996 .
[39] S. Loerch,et al. In vitro and in vivo studies of factors affecting digestion of feeds in synthetic fiber bags. , 1992, Journal of animal science.
[40] Kh Menke,et al. Estimation of the energetic feed value obtained from chemical analysis and in vitro gas production using rumen fluid , 1988 .
[41] J. M. A. Tilley,et al. A TWO-STAGE TECHNIQUE FOR THE IN VITRO DIGESTION OF FORAGE CROPS , 1963 .